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A transient calcium-dependent chloride current in the immature Xenopus oocyte.

机译:未成熟的非洲爪蟾卵母细胞中短暂的钙依赖性氯化物电流。

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摘要

Ionic currents were studied in immature full-grown Xenopus oocytes using the two-micro-electrode voltage-clamp technique. Recordings of total membrane current showed a transient outward peak during depolarizations from the approximate resting voltage (-70 or -80 mV) to voltages more positive than -20 mV. The current-voltage relation for peak outward current was U-shaped, with a maximum at about 0 mV. Replacement of external Cl with methanesulphonate reversed this transient outward current to a transient inward current. Current relaxations recorded after the membrane potential was stepped to different voltages at the time of the peak showed a component that inverted at about -25 to -30 mV. This value was close to ECl as determined by measurement of the intracellular Cl ion concentration. The reversal potential for these current relaxations changed with the external Cl concentration as predicted by the Nernst relation. Replacement of external Ca with Mg, Sr or Ba, or addition of low concentrations of Ni in the presence of Ca, eliminated the transient outward current. Increasing the external Ca concentration increased the amplitude of the transient outward current without affecting the amplitude of the steady-state current. It was concluded that the outward peak in records of total membrane current represented the contribution of a transient outward current carried by Cl ions which was dependent on the entry of external Ca. It will be noted as ICl(Ca). Decay of ICl(Ca) could be described at the normal Ca concentration by a single exponential function whose time constant showed a shallow U-shaped voltage dependence. ICl(Ca) was maximally activatable by depolarizations from a holding potential of about -100 mV, but could not be activated by depolarizations from -40 mV. The amplitude of ICl(Ca) showed a large temperature dependence as compared to the steady-state current, suggesting complex control of its activation.
机译:使用两个微电极电压钳技术研究了未成熟的成年非洲爪蟾卵母细胞中的离子电流。总膜电流的记录显示,在去极化过程中,从大约静止电压(-70或-80 mV)到高于-20 mV的正电压,出现了一个短暂的向外峰值。向外峰值电流的电流-电压关系为U形,最大值约为0 mV。用甲磺酸盐代替外部Cl使该瞬态向外电流逆转为瞬态内部电流。膜电位在峰值时步进到不同电压后记录的电流弛豫显示出一个成分在大约-25至-30 mV处反转。该值接近于通过测量细胞内Cl离子浓度确定的EC1。如Nernst关系所预测的,这些电流弛豫的反向电位随外部Cl浓度而变化。用Mg,Sr或Ba代替外部Ca,或在Ca存在下添加低浓度的Ni,消除了瞬态向外电流。外部Ca浓度的增加会增加瞬态向外电流的幅度,而不会影响稳态电流的幅度。结论是,总膜电流记录中的向外峰值代表了由Cl离子携带的瞬态向外电流的贡献,这取决于外部Ca的进入。它将记为ICl(Ca)。 ICl(Ca)的衰减可以通过单个指数函数描述,该指数在正常Ca浓度下,其时间常数显示出浅U型电压依赖性。 ICl(Ca)可以通过从约-100 mV的保持电势去极化来最大程度地激活,但不能通过从-40 mV的去极化来激活。与稳态电流相比,ICl(Ca)的振幅表现出很大的温度依赖性,表明对其激活的控制复杂。

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